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1.
针对风电塔架结构内部有限的空间,设计一种新型减振系统。基于悬吊质量摆减振原理,利用形状记忆合金(SMA)的超弹性特性,将SMA丝与弹簧叠加成SMA阻尼器后并与悬吊质量摆复合,设计了一种形状记忆合金-悬吊质量摆阻尼器(SMA-SMPD)系统。研究了细部构造、减振原理和参数影响,并利用Matlab软件对单自由度体系在不同地震作用下的动力响应进行了数值模拟。结果表明:所设计的刚度和质量可调的SMA-SMPD是有效的。与结构受控频率相调时,将结构振动能量集中转换到SMA-SMPD上,可耗散结构振动能量,减震率可达30%~40%,且整体性能稳定,对结构动力响应控制效果显著。  相似文献   

2.
工程结构利用悬吊摆的振动控制   总被引:3,自引:0,他引:3  
本文着重研究利用悬吊摆作为被动控制装置减小结构地震反应的方法。  相似文献   

3.
摩擦摆隔震结构地震反应谱的计算分析   总被引:2,自引:0,他引:2  
探讨了摩擦摆基底隔震结构的地震反应谱规律。采用上部结构-摩擦摆两质点模型并利用系统振动微分方程,计算绘制了设计参数(质量比、摩擦系数、滑道半径)不同取值下上部结构的绝对加速度、侧向位移和基底水平滑移反应谱。结果表明:摩擦摆系统对刚度较大的上部结构具有良好的隔震效果。摩擦系数对上部结构的加速度反应、层间水平侧移和系统滑移均有较大的影响,质量比的影响次之.而滑道半径仅对系统滑移有较为显著的作用。  相似文献   

4.
通过模型振动台试验和数值仿真,对适用于高层建筑结构的大吨位摩擦摆隔震支座在不同地震荷载工况下的动力响应和隔震性能进行了深入研究,试验模型的力学及承载性能在不同地震动水准下保持较好,且随着输入激励的增大,支座耗能能力逐渐提高,减隔震效果逐渐增强。隔震支座的数值模拟结果和振动台试验结果吻合良好,取得了较好的模拟效果。在此基础上,选取一复杂高层建筑结构作为研究对象,进行了不同地震波小震和大震激励作用下的动力响应分析,通过对比设置隔震支座与未设置隔震支座的计算结果,总结了高层建筑结构的动力响应规律。结果表明:(1)摩擦摆隔震支座耗能能力随着地震作用的增大而增强;(2)不同类型地震波作用对复杂高层建筑结构的响应明显不同:长周期地震波作用下结构响应明显比普通地震波作用下的结果大,且长周期地震波对结构位移响应的影响较加速度明显;(3)摩擦摆隔震支座对复杂高层建筑结构的地震反应有较为理想的隔震效果,不同地震波作用下结构响应的隔震效果有所不同,且不同响应之间的隔震效果也不相同,位移响应的隔震效果明显大于加速度的隔震效果。  相似文献   

5.
高层建筑利用TLD减小风振反应的研究   总被引:1,自引:0,他引:1  
本文利用调频液体阻尼器(TLD)对高层建筑风振响应进行了控制研究。通过理论计算与分析探讨了TLD中液体质量变化及TLD安装位置的不同对所研究的高层结构风振控制作用的影响,给出了合理的计算结果。  相似文献   

6.
A STUDY ON VIBRATION REDUCTION IN HIGH-RISE STRUCTURES BY MULTI-TLDs   总被引:2,自引:0,他引:2  
本文研究高层建筑利用调液阻尼器(TLD)减小地震反应的方法。首先探讨了激励频率比、调谐频率比对减震效果的影响。在此基础上建立了具有不同TLD设置方式的高层建筑体系的学模型和运动方程,首次提出了利用多个TLD减小高层建筑多个振型的方法。最后通过数值算例验证了本文方法的有效性。  相似文献   

7.
利用多个调液阻尼器减小高层建筑地震反应的研究   总被引:3,自引:1,他引:3  
本文研究高层建筑利用财液阻尼器减小地震反应的方法,首先探讨了激励频率比,调谐频率比对减震效果的影响。在此基础上建立了具有不同TLD设置方式的高层寻找体系的力学模型和运动方程首次提出了利用多个TLD减小高层建筑多个振型的方法,最后通过数值算例验证了本文方法的有效性。  相似文献   

8.
高层建筑地震反应全反馈主动TMD控制理论研究   总被引:6,自引:2,他引:6  
本文应用最近提出的全反馈主动控制法对高层建筑地震反应进行了全反馈主动TMD(调谐质量阻尼器)控制的理论研究,考虑了实时控制过程中控制力的时间滞后效应,并通过数值模拟分析了不同的反馈形式以及不同的时间滞后量对主动TMD控制效果的影响。最后得出结论:对高层建筑地震反应实施全反馈主动TMD控制,既能更有效地降低结构的位移反应和速度反应,又能大幅度地降低结构的加速度反应;且当控制力时间滞后量较大时,对主动  相似文献   

9.
丹东华能电厂主厂房属高层建筑,结构型式复杂。本文采用现场测试与结构反应计算相结合的方法,计算了结构内力与楼层延伸率,最终给出了震害预测结果。  相似文献   

10.
本文将状态递归法与Newmark-β法和Wilson-θ法结合用于高层建筑非线性地震反应分析,给出了时程分析的状态递归方程及求解方法。算例表明本文方法具有节省计算机内存、计算效率高、计算结果可靠等优点,是一种便于使用微型计算机解算高层建筑非线性地震反应分析的方法。  相似文献   

11.
本文建立了用ER/MR智能阻尼器耦联的带裙房高层建筑结构地震反应半主动控制的设计计算方法,文中,在导出ER/MR智能阻尼器力学模型的基础上,建立了ER/MR智能阻尼器耦联的带裙房层建筑结构地震反应的基本方程,并根据瞬时最优主动控制的原则,提出了ER/MR智能阻尼器耦联的带裙房高层建筑地震反应半主动控制的基于最优主动控制位移的“开关-耗能”半主动控制策略,应用本文方法对主楼20层,裙房5层的计算结构;受控地震反应的模拟计算结构表明,耦联主楼和裙房的半主动的ER/MR智能阻尼器可有效地抑制带裙房高层建筑结构地震反应的鞭梢效应,并可均匀地减小结构各层的震反应,是一种简单,方便和有效的智能控制装置。  相似文献   

12.
近断层地震动中长周期、短持时和高能量的加速度脉冲将对高层摩擦摆基础隔震结构的减震性能产生不利影响,考虑土-结构相互作用(SSI效应)后的隔震结构将产生动力耦合效应,可能进一步放大隔震结构地震响应。为此,通过一幢框架-核心筒高层摩擦摆基础隔震结构的非线性地震响应分析,考察近断层脉冲型地震动作用下框架-核心筒摩擦摆基础隔震结构的层间位移角、楼层加速度和隔震层变形等响应规律,揭示隔震体系的损伤机理。基于集总参数SR (sway-rocking)模型,分析不同场地类别与不同地震动类型对隔震体系动力响应影响规律。结果表明:高层摩擦摆基础隔震结构在近断层脉冲型地震动作用下的减震效果相比普通地震动减震效果变差,楼层剪力、层间位移角和隔震层变形等超越普通地震动作用下的1.5倍;对于Ⅲ和Ⅳ类场地类别,考虑SSI效应使隔震结构的地震响应进一步放大,弹塑性层间位移角随着土质变软增大尤为明显。  相似文献   

13.
带裙房高层建筑地震反应控制振动台试验研究   总被引:1,自引:1,他引:0  
2002年9月在香港理工大学成功地进行了带裙房高层建筑地震反应控制试验研究。设计和制作的结构模型是带3层裙房的12层高楼剪切模型,在裙房顶层与主楼之间安装单MR阻尼器形成MR阻尼器耦联结构模型。MR阻尼器采用美国LORD公司摩擦型MR阻尼器,并且选用其配套产品计算机电流控制器对其进行控制,控制系统采用德国dSPACE公司实时控制系统。对独立主楼、独立裙房和原结构模型的动力特性进行了辨识;对结构模型进行了El Centro地震动作用下的地震反应振动台试验;以作者提出的MR阻尼器半主动逻辑控制算法,对MR阻尼器耦联的结构模型进行了地震反应振动台试验。试验结果表明:用MR阻尼器耦联主楼与裙房,采用半主动逻辑控制方法进行控制,能有效抑制主楼的鞭梢效应并使主楼和裙房的地震反应减小。  相似文献   

14.
As high‐rise buildings are built taller and more slender, their dynamic behavior becomes an increasingly critical design consideration. Wind‐induced vibrations cause an increase in the lateral wind design loads, but more importantly, they can be perceived by building occupants, creating levels of discomfort ranging from minor annoyance to severe motion sickness. The current techniques to address wind vibration perception include stiffening the lateral load‐resisting system, adding mass to the building, reducing the number of stories, or incorporating a vibration absorber at the top of the building; each solution has significant economic consequences for builders. Significant distributed damage is also expected in tall buildings under severe seismic loading, as a result of the ductile seismic design philosophy that is widely used for such structures. In this paper, the viscoelastic coupling damper (VCD) that was developed at the University of Toronto to increase the level of inherent damping of tall coupled shear wall buildings to control wind‐induced and earthquake‐induced dynamic vibrations is introduced. Damping is provided by incorporating VCDs in lieu of coupling beams in common structural configurations and therefore does not occupy any valuable architectural space, while mitigating building tenant vibration perception problems and reducing both the wind and earthquake responses of the structure. This paper provides an overview of this newly proposed system, its development, and its performance benefits as well as the overall seismic and wind design philosophy that it encompasses. Two tall building case studies incorporating VCDs are presented to demonstrate how the system results in more efficient designs. In the examples that are presented, the focus is on the wind and moderate earthquake responses that often govern the design of such tall slender structures while reference is made to other studies where the response of the system under severe seismic loading conditions is examined in more detail and where results from tests conducted on the viscoelastic material and the VCDs in full‐scale are presented. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

15.
16.
高层建筑地震反应最优多重TLD控制   总被引:3,自引:1,他引:3  
本文以坑层建筑地震反应进行了最优多重TLD(MTLD)s控制研究。文中阐述了TLD系统的工作原理笔MTLDs系统的参数;建立了多层结构-TMLDs系统耦联体系的运动方程;分析了MTLDs系统的参数对在谐波作用下多层结构动力反应的影响以及各参数之间的关系。  相似文献   

17.
应用模糊数学原理,将我国现行建筑抗震设计规范(GB 50011-2001)划分场地类别的依据模糊化,用正态分布作为等效剪切波速与覆盖层厚度的隶属函数,对不同场地条件特征周期值进行模糊综合评判,给出了高层建筑结构地震作用计算步骤。结果表明,模糊综合评判方法使得建筑抗震设计中的设计反应谱更符合实际,高层建筑结构地震作用的计算更为准确。  相似文献   

18.
大型换流站阀厅结构地震响应弹塑性分析   总被引:1,自引:0,他引:1  
利用有限元方法对带悬挂阀的阀厅结构进行地震响应弹塑性分析,研究不同场地土条件、不同地震动作用对阀厅结构以及悬吊设备地震响应的影响.研究结果表明:阀厅结构在纵向和三向地震作用下存在较明显的扭转效应;三向地震输入时,吊杆产生的拉力约为单向输入的2倍;悬吊设备竖向地震响应大于水平地震响应,大震下悬吊设备竖向加速度约为水平向的...  相似文献   

19.
For almost a decade, a 66‐storey, 280m tall building in Singapore has been instrumented to monitor its dynamic responses to wind and seismic excitations. The dynamic characteristics of the tall building have been investigated via both the finite element method and the experimental modal analysis. The properties of the finite element model have been shown to correlate well with those derived from the data recorded during the ambient vibration tests. During the study period, 21 sets of earthquake ground motions have been recorded at the building site. The basement motions may be divided into three categories based on their predominant frequency components with respect to the building's fundamental frequency. The calibrated three‐dimensional finite element model is employed to simulate the seismic response of the tall building. Correlation analysis of the time histories between the recorded data and the simulated results has been carried out. The correlation analysis results show that the simulated dynamic response time histories match well with those of the recorded dynamic responses at the roof level. The results also show that the simulated maximum response at the roof level is close to the peak response recorded during the earthquakes. Copyright © 2004 John Wiley & Sons, Ltd.  相似文献   

20.
This paper aims to extend the consecutive modal pushover (CMP) procedure for estimating the seismic demands of two-way unsymmetric-plan tall buildings subjected to bi-directional seismic ground motions taking the effects of higher modes and torsion into account. Multi-stage and single-stage pushover analyses are carried out in both X and Y directions. Inelastic seismic responses obtained by multi-stage and single-stage pushover analyses for X and Y directions are combined using the SRSS combination scheme. The final seismic responses are determined by enveloping the combined results of multi-stage and single-stage pushover analyses. To evaluate the accuracy of the proposed procedure, it is applied to two-way unsymmetric-plan tall buildings which include torsionally stiff and torsionally flexible systems. The results derived from the CMP procedure are compared with those from nonlinear response history analysis (NL-RHA), as a benchmark solution. Moreover, the advantages of the proposed procedure are demonstrated by comparing the results derived from the CMP to those from pushover analysis with uniform and fundamental effective mode distributions. The proposed procedure is able to accurately predict amplification or de-amplification of the seismic displacements at the flexible and stiff edges of the two-way unsymmetric-plan tall buildings by considering the effects of higher modes and torsion. The extended CMP procedure can accurately estimate the peak inelastic responses, such as displacements and storey drifts. The CMP procedure features a higher potential in estimating plastic hinge rotations at both flexible and stiff sides of unsymmetric-plan tall buildings under bi-directional seismic excitation when compared to the uniform and fundamental effective mode force distributions.  相似文献   

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